A clean room air conditioning device

By combining wind power structure and vibration structure, the cleanroom air conditioning unit achieves energy self-sufficiency and automatic dust removal, solving the problems of high energy consumption and difficult maintenance, and meeting the needs of cleanrooms for high efficiency, energy saving and low maintenance cost.

CN121112409BActive Publication Date: 2026-02-17JIANGSU JIESHUN MECHANICAL & ELECTRICAL ENG CO LTD
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Patent Information

Application Number
CN202511613208.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-11-06
Publication Date
2026-02-17
Estimated Expiration
2045-11-06

AI Technical Summary

Technical Problem

Existing cleanroom air conditioning systems are energy-intensive, difficult to maintain, inefficient, and wasteful, making it difficult to meet the requirements of high efficiency, energy saving, and low maintenance.

Method used

The system uses a wind-powered structure to convert the airflow from the cleanroom's air conditioning outlet into electrical energy, which drives the electrostatic dust removal structure to achieve purification. Combined with a vibration structure, it achieves automatic dust removal, forming a self-sufficient, modularly coordinated purification closed loop.

Benefits of technology

It achieves efficient purification in clean rooms, reduces operating energy consumption and maintenance workload, ensures continuous purification and high cleanliness of equipment, and reduces operating costs.

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Abstract

The application relates to the technical field of clean room ventilation systems, and particularly discloses a purification air conditioning device for a clean room, which comprises a main body structure, a wind power structure, a dust removal structure and a vibration structure; the wind power structure is fixedly arranged in the main body structure, the dust removal structure is fixedly arranged in the main body structure and located at the right side of the wind power structure, and the vibration structure is fixedly arranged in the main body structure and connected with the wind power structure; the main body structure is used for bearing and collecting, the wind power structure is used for natural power generation by means of wind power of a ventilation system, electric energy generated by the wind power structure is transmitted to the dust removal structure, so that the dust removal structure realizes electrostatic dust removal, the vibration structure is used for wind power driving and collision on the dust removal structure, and then the adsorbed particles are collected. The scheme is adapted to the core standard of the clean room, that is, low pollution and high safety, has low cycle cost, takes into account short-term investment and long-term operation and maintenance, has strong scene compatibility, and is suitable for different clean room types and operation requirements.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of clean room ventilation systems, in particular to a purification air conditioning device for a clean room. BACKGROUND

[0002] As the core production environment of high-end industries such as electronic semiconductors, biomedicine, food processing, and precision instrument manufacturing, the air quality of a clean room directly determines the product precision, pass rate, and production safety, and requires professional purification air conditioning devices to achieve the environmental control goal of "low dust, low bacteria, and stable airflow"; At present, although the mainstream clean room purification air conditioning devices on the market can meet the basic dust removal needs, there are still significant technical pain points in energy consumption, dust removal persistence, maintenance convenience, and functional synergy, which are difficult to adapt to the current industry's purification needs of "high efficiency, energy saving, and low operation and maintenance cost";

[0003] The specific problems are as follows: high energy consumption and dependence on external power supply, high operating cost, the core functions of existing purification air conditioning devices (such as filter dust removal, fan drive, and auxiliary sterilization) all rely on industrial power supply, and there is no closed-loop design of energy self-sufficiency; And the dust removal method of the existing purification air conditioner is mainly filter filtration, but there is a risk of efficiency decay, and the filter needs to be replaced regularly, which not only affects the production continuity, but also increases the cost of consumables. SUMMARY

[0004] The purpose of the present application is to solve the problems of "high energy consumption, difficult maintenance, efficiency decay, and energy waste" of existing clean room purification air conditioning devices. The present application realizes a purification device with energy self-sufficiency, automatic dust removal function, and strong module synergy to solve the above technical pain points and meet the needs of clean room industry for high efficiency, energy saving, and low maintenance cost.

[0005] To achieve the above problem-solving, the present application provides the following technical scheme: a purification air conditioning device for a clean room, comprising a main body structure, a wind power structure, a dust removal structure, and a vibration structure; the wind power structure is fixedly arranged in the main body structure, the dust removal structure is fixedly arranged in the main body structure and located at the right side of the wind power structure, and the vibration structure is fixedly arranged in the main body structure and connected with the wind power structure; the main body structure is used for bearing and collecting, the wind power structure is used for natural power generation by means of the wind power of the ventilation system, the electric energy generated by the wind power structure is transmitted to the dust removal structure, so as to make the dust removal structure realize electrostatic dust removal, and the vibration structure is used for wind power driving, colliding with the dust removal structure, and then realizing the falling and collection of the adsorbed particles.

[0006] Preferably, the main structure comprises a collecting box, a mounting box, a pair of sockets, a baffle and a pair of collecting boxes; the collecting box is a rectangular box body, and three same inner cavities are equidistantly arranged in the collecting box, and the inner cavities are opposite and isolated, an inlet is arranged on the upper wall of the right end of the collecting box and close to the front and rear ends, the inlet is communicated with two inner cavities, a groove is symmetrically arranged on the upper wall close to the left end of the collecting box, and the groove is communicated with the inner cavity in the middle, the mounting box is a box body without a lower wall and left and right side walls, the mounting box is fixedly buckled on the collecting box, a pair of sockets are symmetrically arranged on the upper wall in the mounting box, the baffle is detachably buckled on the left side of the mounting box, and an air outlet is arranged in the middle of the baffle, and a pair of collecting boxes are detachably inserted into two inner cavities of the collecting box.

[0007] Preferably, the wind power structure comprises an axle support, a driving shaft, a fan blade, a generator main body, a pair of pulleys and a belt; the axle support is fixedly arranged on the front and rear side walls of the mounting box and located on the right side of the groove, the driving shaft is movably penetrated through the middle of the axle support, the fan blade is fixedly sleeved on the left end of the driving shaft and located on the right side of the baffle, the generator main body is fixedly arranged in the inner cavity in the middle of the collecting box and close to the groove, and a pair of pulleys are fixedly sleeved on the input end of the generator main body and the driving shaft, respectively, and the belt is movably sleeved on the pulleys and movably penetrated through the groove.

[0008] Preferably, the dust removal structure comprises a pair of elastic supports, a plurality of springs, a pair of plate supports, a pair of anode plates, a pipe support, a cathode tube, a plurality of thorns and a linkage rod; a pair of elastic supports are detachably sleeved on the sockets, one ends of the plurality of springs are equidistantly arranged on the lower walls of the elastic supports, a pair of plate supports are fixedly arranged on the other ends of the springs, a pair of anode plates are fixedly arranged on the plate supports, and the anode plates are respectively connected with the positive poles of the output ends of the generator main body, the anode plates are respectively corresponding to the inlets, the pipe support is T-shaped, the pipe support is detachably arranged on the elastic supports at two ends, and the other end of the pipe support is located between the anode plates, the cathode tube is fixedly arranged on the pipe support and located between the anode plates, a plurality of thorns are equidistantly arranged on the cathode tube, and the linkage rod is fixedly arranged between the bottom portions of the anode plates at two ends.

[0009] Preferably, the plate supports are opposite and parallel to the elastic supports.

[0010] Preferably, the oscillation structure comprises a driving disc, a slide rail, a slide base, a collision rod, a reciprocating rod and a swing rod; the driving disc is fixedly sleeved on the right end of a driving shaft and located at the right side of a shaft support; the slide rail is fixedly arranged on the upper wall of a collection box and located at the left side of an inlet; the slide base is movably embedded in the slide rail; one end of the collision rod is fixedly arranged on the front end of the slide base and the other end of the collision rod is located between anode plates; one end of the reciprocating rod is eccentrically movably connected to the rotating disc; one end of the swing rod is movably connected to the rear end of the slide base and the other end of the swing rod is movably connected to the other end of the reciprocating rod.

[0011] Preferably, the slide base is driven by the driving disc to move back and forth in the slide rail in an eccentric reciprocating manner.

[0012] Preferably, the collision rod can contact one of the anode plates.

[0013] Preferably, the anode plates are vibrated by force through springs.

[0014] The clean room purification air conditioning device provided by the application has the beneficial effects that:

[0015] The device is designed to rely on the air power of the air outlet of the air conditioner to realize energy self-sufficiency and multi-module collaborative purification, and has energy saving, purification effect, maintenance convenience, function expansion and structural collaboration, and specifically has the following advantages:

[0016] 1. The device relies on the inherent air power of the air outlet of the clean room air conditioner to realize energy circulation, and does not need to be connected to an external power grid, thereby reducing the operation energy consumption and cost from the root: the air power of the air supply of the air conditioning system directly drives the rotation of the fan blades of the wind power structure, drives the generator main body to generate electricity through the transmission of the driving shaft, belt pulley and belt, and directly supplies the electric energy to the dust removal structure (anode plate, cathode tube), to form a closed loop of "air power, mechanical energy, electric energy and purification power", without additional electric energy consumption.

[0017] 2. The device as the terminal purification unit of the air outlet of the air conditioner performs secondary electrostatic dust removal on the filtered air supply of the air conditioning system, greatly reduces the residual fine particles in the air, and meets the high cleanliness requirement: the anode plate is positively charged and the cathode tube (with thorns) is negatively charged through power supply of the generator, the thorns enhance the negative charge emission, the residual fine dust particles (fine dust not removed by the initial filter of the air conditioner) in the air are charged with negative ions, and are quickly absorbed by the anode plate, compared with the traditional filter screen, the fine dust is more easily captured (avoiding the purification failure caused by the blockage of the filter screen pores).

[0018] 3. The device utilizes a mechanical linkage driven by wind to achieve automatic dust cleaning, without the need for manual cleaning during shutdown, reducing maintenance workload and ensuring continuous purification. Only periodic emptying of the collection box is required. When the drive shaft rotates, the right end of the drive plate is rotated, and through the "reciprocating rod, swing rod and slide" transmission, the impact rod moves back and forth in the slide rail, periodically colliding with the anode plate. The anode plate vibrates through the bottom spring, and the adsorbed dust particles fall off. No additional high-pressure air or electric dust cleaning motor is required. The falling dust falls directly into the detachable collection box through the inlet of the collection box. The collection box can be directly plugged in and replaced, without the need to disassemble the internal structure of the device, with high maintenance efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 The assembly structure of the present application is shown in the figure.

[0020] Figure 2 The appearance of the present application is shown in the figure.

[0021] Figure 3 The split structure of the main body structure is shown in the figure.

[0022] Figure 4 The split structure of the wind power structure is shown in the figure.

[0023] Figure 5 The assembly structure of the main body structure and the wind power structure is shown in the figure.

[0024] Figure 6 The split structure of the dust removal structure is shown in the figure.

[0025] Figure 7 The assembly structure of the dust removal structure is shown in the figure.

[0026] Figure 8 The split structure of the oscillation structure of the present application is shown in the figure.

[0027] In the figure: 1, main body structure, 11, collection box, 12, mounting box, 13, socket, 14, baffle, 15, collection box, 16, inner cavity, 17, inlet, 18, with slot, 2, wind power structure, 21, shaft support, 22, drive shaft, 23, fan blade, 24, generator main body, 25, pulley, 26, belt, 3, dust removal structure, 31, spring holder, 32, spring, 33, plate holder, 34, anode plate, 35, pipe holder, 36, cathode tube, 37, thorn, 38, linkage rod, 4, oscillation structure, 41, drive plate, 42, slide rail, 43, slide, 44, impact rod, 45, reciprocating rod, 46, swing rod. DETAILED DESCRIPTION

[0028] The specific embodiments of the present application will be described in detail below with reference to the accompanying drawings.

[0029] AsFigures 1-8 As shown in the present application, a technical solution is provided: a purification air conditioning device for clean room, comprising a main structure 1, a wind power structure 2, a dust removal structure 3 and a shock structure 4; the wind power structure 2 is fixedly arranged in the main structure 1, the dust removal structure 3 is fixedly arranged in the main structure 1 and located at the right side of the wind power structure 2, and the shock structure 4 is fixedly arranged in the main structure 1 and connected with the wind power structure 2; the main structure 1 is used for bearing and collecting, the wind power structure 2 is used for natural power generation by means of the wind power of the ventilation system, the electric energy generated by the wind power structure 2 is transmitted to the dust removal structure 3, so as to promote the dust removal structure 3 to realize electrostatic dust removal, and the shock structure 4 is used for wind power driving and colliding with the dust removal structure 3, so as to realize the falling and collection of the adsorbed particles.

[0030] As a further scheme of the present application, the main structure 1 comprises a collection box 11, a mounting box 12, a pair of sockets 13, a baffle 14 and a pair of collection boxes 15; the collection box 11 is a rectangular box body, and three same inner cavities 16 are arranged at equal intervals in the collection box 11, the inner cavities 16 are relatively isolated, the upper wall of the right end of the collection box 11 is provided with an inlet opening 17 near the front and rear ends, the inlet opening 17 is communicated with two of the inner cavities 16, a groove 18 is symmetrically arranged on the upper wall near the left end of the collection box 11, and the groove 18 is communicated with the inner cavity 16 in the middle, the mounting box 12 is a box body without lower wall and left and right side walls, the mounting box 12 is fixedly buckled on the collection box 11, the pair of sockets 13 are respectively and symmetrically arranged on the upper wall in the mounting box 12, the baffle 14 is detachably buckled on the left side of the mounting box 12, and the baffle 14 is provided with an air outlet in the middle, and the pair of collection boxes 15 are respectively and detachably inserted into two of the inner cavities 16 in the collection box 11; the collection box 11 bears the collection boxes 15, the dust falls into the collection boxes 15 through the inlet openings 17, and the left side of the mounting box 12 is shielded by the baffle 14.

[0031] More specifically, the main structure 1 is the bearing basis and dust collection core of the whole purification air conditioning device, is used for mounting and fixing the wind power structure 2, the dust removal structure 3 and the shock structure 4, and realizes the functional adaptation of "equipment installation" and "dust collection" through the partition isolation design.

[0032] As a further scheme of the present application, the wind power structure 2 comprises an axle support 21, a driving shaft 22, a fan blade 23, a generator body 24, a pair of pulleys 25 and a belt 26; the axle support 21 is fixedly arranged on the front and rear sidewalls of the installation box 12, and the axle support 21 is located at the right side of the slot 18; the driving shaft 22 is movably penetrated through the middle part of the axle support 21; the fan blade 23 is fixedly sleeved on the left end of the driving shaft 22, and the fan blade 23 is located at the right side of the baffle 14; the generator body 24 is fixedly arranged in the inner cavity 16 of the middle part of the collection box 11, and is close to the slot 18; the pair of pulleys 25 are respectively fixedly sleeved on the input end of the generator body 24 and the driving shaft 22; the belt 26 is movably sleeved on the pulleys 25, and the belt 26 is movably penetrated through the slot 18; the driving shaft 22 is driven to rotate by the fan blade 23 receiving wind power; the generator body 24 is driven to generate electric energy by the transmission of the pulleys 25 and the belt 26.

[0033] More specifically, the wind power structure 2 is the energy supply core of the whole device, which is used for converting the wind power of the air outlet of the clean room air conditioner into electric energy, providing power for the dust removal structure 3, and transmitting mechanical power for the oscillation structure 4.

[0034] As a further scheme of the present application, the dust removal structure 3 comprises a pair of elastic supports 31, a plurality of springs 32, a pair of plate supports 33, a pair of anode plates 34, a pipe support 35, a cathode tube 36, a plurality of thorns 37 and a linkage rod 38; the pair of elastic supports 31 are respectively detachably sleeved on the sockets 13; one end of the plurality of springs 32 is respectively arranged at equal intervals on the lower walls of the elastic supports 31; the pair of plate supports 33 are respectively fixedly arranged on the other ends of the springs 32, and the plate supports 33 are respectively and oppositely parallel to the elastic supports 31; the pair of anode plates 34 are respectively fixedly arranged on the plate supports 33, and the anode plates 34 are respectively connected with the positive poles of the output ends of the generator body 24; the pair of anode plates 34 are respectively corresponding to the inlet openings 17; the pipe support 35 is T-shaped, and the pipe support 35 is respectively detachably arranged at the two ends of the elastic supports 31, and the other end of the pipe support 35 is located between the anode plates 34; the cathode tube 36 is fixedly arranged on the pipe support 35 and located between the anode plates 34; the plurality of thorns 37 are respectively arranged at equal intervals on the cathode tube 36; the linkage rod 38 is fixedly arranged at the two ends between the bottom parts of the anode plates 34; the elastic supports 31 are installed on the installation box 12; the springs 32 can promote the vibration of the anode plates 34 under stress, and the dust adsorbed is scattered; the electric energy generated by the generator body 24 is supplied to the cathode tube 36 and the anode plates 34; the negative pole is enhanced by the thorns 37, and the dust charged with negative ion electricity is adsorbed on the anode plates 34 to realize electrostatic dust removal; the linkage rod 38 realizes the synchronous vibration of the two anode plates 34, and the anode plates 34 are vibrated by the springs 32 under stress.

[0035] More specifically, the dust removal structure 3 as the core purification unit of the whole device, relying on the power provided by the wind power structure 2 to realize electrostatic dust removal, and through the cooperation with the oscillation structure 4 and the main body structure 1, the purification closed loop of "dust adsorption, vibration dust removal and directional collection" is completed.

[0036] As a further scheme of the present application, the oscillation structure 4 comprises a driving disc 41, a sliding rail 42, a sliding seat 43, a striking rod 44, a reciprocating rod 45 and a swing rod 46; the driving disc 41 is fixedly sleeved on the right end of the driving shaft 22 and located on the right side of the shaft support 21; the sliding rail 42 is fixedly arranged on the upper wall of the collecting box 11 and located on the left side of the inlet 17; the sliding seat 43 is movably embedded in the sliding rail 42; one end of the striking rod 44 is fixedly arranged on the front end of the sliding seat 43, and the other end of the striking rod 44 is located between the anode plates 34; one end of the reciprocating rod 45 is eccentrically movably connected to the rotating disc; one end of the swing rod 46 is movably connected to the rear end of the sliding seat 43, and the other end of the swing rod 46 is movably connected to the other end of the reciprocating rod 45; through the driving of the wind force, the driving disc 41 is driven to rotate, thereby realizing the reciprocating movement of the reciprocating rod 45 and the swing rod 46, and driving the sliding seat 43 to move back and forth, so that the striking rod 44 strikes the anode plate 34; the sliding seat 43 is driven by the driving disc 41 to move back and forth in the sliding rail 42 through the eccentric reciprocating of the reciprocating rod 45, and the striking rod 44 can contact one of the anode plates 34.

[0037] More specifically, the dust removal structure 3 as the core purification unit of the present device, through the power provided by the wind power structure 2 to realize electrostatic dust removal, and relying on the spring 32 and the linkage rod 38 to cooperate with the oscillation structure 4 to complete dust removal.

[0038] As a further scheme of the present application, in order to improve the purification effect, the upper wall in the installation box 12 can be provided with a sterilization lamp, and the sterilization lamp is located between the sockets 13 and connected with the generator main body 24.

[0039] The detailed connection means is a known technology in the art, and the working principle and process are mainly introduced below, and the specific work is as follows.

[0040] The air conditioner air supply passes through the air outlet in the middle of the baffle 14 of the main body structure 1 and directly acts on the fan blade 23 of the wind power structure 2; the fan blade 23 is rotated around the axis of the driving shaft 22 by the air flow thrust, and converts the wind power into the rotating mechanical energy of the driving shaft 22;

[0041] The driving shaft 22 is stably rotated through the support of the shaft support 21, the belt pulley 25 on the driving shaft 22 rotates synchronously, the belt 26 passes through the belt groove 18, and the input end of the generator main body 24 in the middle inner cavity 16 of the collecting box 11 is driven to rotate, the rotor of the generator main body 24 rotates, and electric energy is generated;

[0042] The electricity output by the generator body 24 is divided into two paths by a wire: one path supplies the anode plate 34 (connected to the positive electrode) and the cathode tube 36 (connected to the negative electrode) of the dust removal structure 3, providing electricity for electrostatic dust removal; the other path can supply the sterilization lamp in the installation box 12 as needed, realizing integrated purification of dust removal and sterilization, and no external electricity is consumed throughout the process;

[0043] The dust removal structure 3 realizes electrostatic dust removal relying on electricity, improving cleanliness; the dust removal structure 3 forms a static electric field based on the electricity supplied by the generator body 24, the anode plate 34 is fixed to the plate frame 33 and faces the inlet 17 of the collection box 11, the cathode tube 36 is fixed to the tube frame 35 and is located in the middle of the two anode plates 34, forming a uniform direct-current static electric field between the two; the thorn 37 on the outer wall of the cathode tube 36 is distributed due to the sharp end effect, causing the surrounding air to ionize into a large number of negative ions and a small number of positive ions, the positive ions are attracted and neutralized by the cathode tube 36, and the negative ions remain in the static electric field;

[0044] When the air conditioning supply air flows through the static electric field region between the two anode plates 34 and the cathode tube 36, a small amount of fine dust particles in the airflow combine with negative ions and become negatively charged; the negatively charged dust particles are quickly moved to the positively charged anode plate 34 under the action of the static electric field force (the attraction of the positively charged anode plate 34), and finally firmly adsorbed on the surface of the anode plate 34, completing air purification;

[0045] The spring 32 is connected between the spring frame 31 and the plate frame 33, providing support for the anode plate 34 and reserving "vibration space" for subsequent shock cleaning; the connecting rod 38 connects the bottoms of the two anode plates 34, ensuring that the two anode plates 34 move synchronously during subsequent cleaning, avoiding uneven purification caused by one-sided dust accumulation;

[0046] The shock structure 4 realizes automatic cleaning of the anode plate 34 relying on mechanical energy; the shock structure 4 converts the rotary motion of the drive shaft 22 into reciprocating linear motion, periodically impacts the anode plate 34 to realize automatic cleaning; the specific process is as follows: when the drive shaft 22 rotates, the drive disc 41 at the right end rotates synchronously; the eccentricity at the edge of the drive disc 41 drives the reciprocating rod 45 to make reciprocating motion; the swing rod 46 movably connected at the other end of the reciprocating rod 45 swings around the rear end of the slide 43, engages with the reciprocating plate, and then pushes the slide 43 to move reciprocally in the slide rail 42; the impact rod 44 fixed at the front end of the slide 43 moves reciprocally synchronously with the slide 43; when the slide 43 moves forward, the impact rod 44 accurately impacts one of the anode plates 34; the anode plate 34 vibrates after being impacted by the impact rod 44 through the spring 32;

[0047] The vibration of the anode plate 34 makes the dust particles adsorbed on the surface lose the adhesion and fall off from the surface of the anode plate 34 under the action of gravity, and then fall into the detachable collection box 15 through the inlet 17 on the upper wall of the collection box 11, so as to complete the cleaning of the anode plate 34 and ensure the stable efficiency of subsequent electrostatic dust removal.

[0048] In summary, the scheme is adapted to the core standards of the clean room "low pollution and high safety", has low cycle cost, takes into account short-term investment and long-term operation and maintenance, has strong scene compatibility, is suitable for different clean room types and operation requirements, does not interfere with the original system of the clean room, and improves the overall operation stability.

[0049] Although embodiments of the present application have been shown and described, it is to be understood that various modifications, substitutions, replacements and changes can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A purification air conditioning device for cleanrooms, characterized in that, It includes a main structure (1), a wind power structure (2), a dust removal structure (3), and an oscillation structure (4); the wind power structure (2) is fixedly installed inside the main structure (1), the dust removal structure (3) is fixedly installed inside the main structure (1) and located on the right side of the wind power structure (2), and the oscillation structure (4) is fixedly installed inside the main structure (1) and connected to the wind power structure (2); The main structure (1) is used for carrying and collecting, the wind power structure (2) is used to generate electricity naturally by means of the wind power of the ventilation system, and the electrical energy generated by the wind power structure (2) is transmitted to the dust removal structure (3) to enable the dust removal structure (3) to achieve electrostatic dust removal. The oscillation structure (4) is used for wind power drive to collide with the dust removal structure (3), thereby enabling the adsorbed particles to fall and be collected. The main structure (1) includes a collection box (11), which is a rectangular box and has three identical inner cavities (16) arranged at equal intervals. The inner cavities (16) are relatively isolated. The upper right wall of the collection box (11) and near the front and rear ends are provided with inlet ports (17). The inlet ports (17) are connected to two of the inner cavities (16). The upper left wall of the collection box (11) is symmetrically provided with grooves (18) near the middle, and the grooves (18) are connected to the inner cavity (16) in the middle. The wind power structure (2) includes a shaft frame (21), a drive shaft (22), fan blades (23), a generator body (24), a pair of pulleys (25), and a belt (26); The two ends of the shaft bracket (21) are fixedly set on the front and rear side walls of the mounting box (12), and the shaft bracket (21) is located on the right side of the groove (18). The drive shaft (22) moves through the middle of the shaft bracket (21). The fan blade (23) is fixedly fitted on the left end of the drive shaft (22), and the fan blade (23) is located on the right side of the baffle (14). The generator body (24) is fixedly set in the inner cavity (16) of the middle of the collection box (11) and close to the groove (18). A pair of pulleys (25) are fixedly fitted on the input end of the generator body (24) and the drive shaft (22) respectively. The belt (26) moves through the pulleys (25) respectively. The dust removal structure (3) includes a pair of spring frames (31), several springs (32), a pair of plate frames (33), a pair of anode plates (34), a tube frame (35), a cathode tube (36), several barbs (37), and a connecting rod (38). A pair of the aforementioned spring holders (31) are detachably mounted on the socket (13). One end of several springs (32) is equidistantly arranged on the lower wall of the spring holder (31). A pair of plate holders (33) are fixedly arranged on the other end of the springs (32). A pair of anode plates (34) are fixedly arranged on the plate holders (33), and the anode plates (34) are respectively connected to the positive output terminal of the generator body (24). A pair of anode plates (34) are respectively opposite to the inlet (17). The tube frame (35) is T-shaped. Both ends of the tube frame (35) are detachably mounted on the spring holder (31), and the other end of the tube frame (35) is located between the anode plates (34). The cathode tube (36) is fixedly arranged on the tube frame (35) and located between the anode plates (34). Several of the aforementioned barbs (37) are equidistantly arranged on the cathode tube (36). Both ends of the connecting rod (38) are fixedly arranged between the bottom of the anode plates (34).

2. A purification air conditioning device for cleanrooms according to claim 1, characterized in that, The main structure (1) also includes an installation box (12), a pair of sockets (13), a baffle (14) and a pair of collection boxes (15); The installation box (12) is a box without a bottom wall and left and right side walls. The installation box (12) is fixedly fastened to the collection box (11). A pair of sockets (13) are symmetrically arranged on the upper inner wall of the installation box (12). The baffle (14) is detachably fastened to the left side of the installation box (12), and an air outlet is provided in the middle of the baffle (14). A pair of collection boxes (15) are detachably inserted into two of the inner cavities (16) of the collection box (11).

3. A purification air conditioning device for cleanrooms according to claim 2, characterized in that, The plate frame (33) is parallel to the shell frame (31).

4. A purification air conditioning device for cleanrooms according to claim 3, characterized in that, The oscillation structure (4) includes a drive disk (41), a slide rail (42), a slide block (43), a striker (44), a reciprocating rod (45), and a swing rod (46). The drive disc (41) is fixedly mounted on the right end of the drive shaft (22) and located on the right side of the shaft frame (21). The slide rail (42) is fixedly mounted on the upper wall of the collection box (11) and located on the left side of the inlet (17). The slide block (43) is movably embedded in the slide rail (42). One end of the impact rod (44) is fixedly mounted on the front end of the slide block (43), and the other end of the impact rod (44) is located between the anode plates (34). One end of the reciprocating rod (45) is eccentrically and movably connected to the turntable. One end of the swing rod (46) is movably connected to the rear end of the slide block (43), and the other end of the swing rod (46) is movably connected to the other end of the reciprocating rod (45).

5. A purification air conditioning device for cleanrooms according to claim 4, characterized in that, The slide block (43) is driven by the reciprocating rod (45) driven by the drive disc (41) to move back and forth in the slide rail (42).

6. A purification air conditioning device for cleanrooms according to claim 5, characterized in that, The striker (44) is able to contact one of the anode plates (34).

7. A purification air conditioning device for cleanrooms according to claim 6, characterized in that, The anode plate (34) is subjected to force and vibrates through the spring (32).

Citation Information

Patent Citations

  • Purification device and clean room

    CN117366706A